CN203106795U - Multipurpose healthy water dispenser - Google Patents

Multipurpose healthy water dispenser Download PDF

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Publication number
CN203106795U
CN203106795U CN 201220698314 CN201220698314U CN203106795U CN 203106795 U CN203106795 U CN 203106795U CN 201220698314 CN201220698314 CN 201220698314 CN 201220698314 U CN201220698314 U CN 201220698314U CN 203106795 U CN203106795 U CN 203106795U
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China
Prior art keywords
water
water tank
key
pipeline
low temperature
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Expired - Fee Related
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CN 201220698314
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Chinese (zh)
Inventor
和强
胡平平
任峻辰
王丹倩
张瑞佳
付嘉裕
孙长敬
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China Jiliang University
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China Jiliang University
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Priority to CN 201220698314 priority Critical patent/CN203106795U/en
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Abstract

The utility model belongs to a multipurpose healthy water dispenser and relates to a healthy water dispenser capable of providing drinking water in various temperatures. The multipurpose healthy water dispenser comprises a machine case (10), a filter (2), a heating water tank (5), a boiling water tank (16), a room temperature water tank (20), a low temperature water tank (35), a refrigerating device (34), a confluence board (25), electromagnetic valves, water level temperature integrated sensors, a position sensor (23), pipelines and a control system, wherein the control system comprises a circuit board (14), a liquid crystal display screen (15), a boiling water key (45), a high temperature water key (46), a room temperature water key (47), a low temperature water key (44), a mode selecting key (43) and a cleaning disinfection key (42), the heating water tank (5) is used for heating tap water, the boiling water tank (16), the room temperature water tank (20) and the low temperature water tank (35) are respectively used for storing boiling water, room temperature water and low temperature water, all water tanks are connected through the electromagnetic valves and the pipelines, and the water level temperature integrated sensors are arranged inside the water tanks. The multipurpose healthy water dispenser can provide the drinking water in various temperatures, the defects of an existing water dispenser are also overcome, the multipurpose healthy water dispenser has the advantages of hommization, health, energy saving and the like, and the application prospect is wide.

Description

A kind of multipurpose healthy drinking machine
Technical field
The utility model relates to a kind of water dispenser, especially a kind of multipurpose healthy drinking machine.
Background technology
At present, existing water dispenser mainly contains two kinds of bottled water water dispenser and running water water dispensers.The bottled water water dispenser is easy to use, save time, room temperature water and boiling water can be provided, and wins consumers in general's favor.Its deficiency is: some harmful organic substances can be dissolved in the water etc. when the bucket that difficult quality guarantee, dust and bacterium that need to buy bottled water, bottled water can enter from the junction of water dispenser and bucket, water is made by heating repeatedly, by PETG (PET) in water dispenser used.The running water water dispenser directly uses running water to heat, and has both reduced the cost of drinking water effectively, and part has solved some unsound factors of being brought by bottled water, but still exists water by heating and the problem that boiling water can only be provided repeatedly.Along with people to the improving constantly of living standard, drinking water has also been proposed different requirements, such as, can need the drinking water of different temperatures when brewing different types of tea, coffee and other beverage; Winter in spring is more to boiling water and high-temperature water demand, and then have more demands etc. to room temperature and the drinking water that is lower than room temperature summer.Existing water dispenser then can not satisfy these demands.
Summary of the invention
For overcoming the defective that prior art exists, the utility model proposes a kind of multipurpose healthy drinking machine, comprise casing 10, filter 2, heating water tank 5, boiled water tank 16, room temperature water tank 20, low temperature water tank 35, refrigerating plant 34, cylinder manifold 25, magnetic valve, water level temperature integrated sensor, position sensor 23, pipeline and control system.Control system comprises circuit board 14, LCDs 15, boiling water key 45, high-temperature water key 46, room temperature water key 47, water at low temperature key 44, mode selecting key 43, cleaning and sterilizing key 42.
Municipal tap water pipe 1 links to each other with heating water tank 5 with electromagnetic valve I 4 by filter 2, pipeline I 3.Water level temperature integrated sensor I 7 is fixed on the top of heating water tank 5 and inserts its inside.Passage I 8 is arranged at heating water tank 5 tops, and heater 6 is arranged at inboard bottom, and the bottom links to each other with the top of electromagnetic valve II 9 with boiled water tank 16 by pipeline II 11.Water level temperature integrated sensor II 12 is fixed on boiled water tank 16 tops and inserts its inside.There is heat-insulation layer I 17 outside of boiled water tank 16, and passage II 13 is arranged at the top, and the bottom links to each other with cylinder manifold 25 with electromagnetic valve II I18 by pipeline III22, and the bottom also links to each other with room temperature water tank 20 tops with electromagnetic valve I V40 by pipeline IV41.Water level temperature integrated sensor III21 is fixed on the top of room temperature water tank 20 and inserts its inside.Passage III19 is arranged at room temperature water tank 20 tops, and the bottom links to each other with cylinder manifold 25 with magnetic valve V27 by pipeline V26, also links to each other with low temperature water tank 35 with magnetic valve VI38 by pipeline VI39.Water level temperature integrated sensor IV37 is fixed on low temperature water tank 35 tops and inserts its inside.Passage IV36 is arranged at low temperature water tank 35 tops, and the bottom links to each other with cylinder manifold 25 with magnetic valve VII29 by pipeline VII28, also has pipeline VIII32 to communicate with atmosphere by magnetic valve VIII33.Refrigerating plant 34 adopts the paster mode to be fixed on the outside of low temperature water tank 35.There is heat-insulation layer II 30 in the outside of low temperature water tank 35.Water intaking tap 24 is positioned at the positive of casing 10 and links to each other with cylinder manifold 25.Circuit board 14 is fixed on the inboard in casing 10 fronts.Position sensor 23 connects firmly with casing 10, and is electrically connected near water intaking tap 24 and with circuit board 14.LCDs 15 and all buttons all connect firmly with casing 10, are positioned at leading 24 tops of water intaking, and are electrically connected with circuit board 14.All water level temperature integrated sensors all are electrically connected with circuit board 14.Relief port 31 is arranged at casing 10 bottoms.
The utility model utilizes running water to heat, and with function effective integrations such as the heating of water, insulation, coolings, adopt and detect automatically and control technology, both can adapt to the drinking water that different demands provide various temperature, overcome the health problem that the ubiquitous water of existing water dispenser is heated repeatedly again, have hommization, health, advantage such as energy-conservation, have a extensive future.
Description of drawings
By the following examples and accompanying drawing be further described.
Fig. 1 is the structural representation of multipurpose healthy drinking machine described in the utility model.
Fig. 2 is the left view of Fig. 1.
Among the figure, 1. manage the municipal tap water, 2. filter, 3. pipeline I, 4. electromagnetic valve I, 5. heating water tank, 6. heater, 7. water level temperature integrated sensor I, 8. passage I, 9. electromagnetic valve II, 10. casing, 11. pipeline II, 12. water level temperature integrated sensor II, 13. passage II, 14. circuit boards, 15. LCDs, 16. boiled water tank, 17. heat-insulation layer I, 18. electromagnetic valve II I, 19. passage III, 20. the room temperature water tank, 21. water level temperature integrated sensor III, 22. pipeline III, 23. position sensors, 24. the water intaking tap, 25. cylinder manifolds, 26. pipeline IV, 27. electromagnetic valve I V, 28. pipeline V, 29. magnetic valve V, 30. heat-insulation layer II, 31. relief port, 32. pipeline VI, 33. magnetic valve VI, 34. refrigerating plants, 35. low temperature water tanks, 36. passage IV, 37. water level temperature integrated sensor IV, 38. magnetic valve VII, 39. pipeline VII, 40. magnetic valve VIII, 41. pipeline VIII, 42. the sterilization cancel key, 43. mode selecting keys, 44. water at low temperature keys, 45. the boiling water key, 46. high-temperature water keys, 47. room temperature water keys.
Embodiment
Among the embodiment shown in Figure 1, filter 2 is inserted municipal tap water pipe 1.After the energising, control system self check, LCDs 15 display system states.Want before using earlier all water tanks in water dispenser inside, pipeline and magnetic valve to be cleaned and sterilize.Manual unlocking water intaking tap 24 is pressed cleaning and sterilizing key 42, and electromagnetic valve I 1 is opened, and running water enters heating water tank 5 by filter 2, and heater 6 energisings are simultaneously heated.When water level reached capping, water level temperature integrated sensor I 7 sent water level signal, and electromagnetic valve I 1 is closed.Boiled post heating device 6 outages of water are also opened electromagnetic valve II 9.Boiled water enters boiled water tank 16 by pipeline II 11 and electromagnetic valve II 9.After water level reached capping and postpones setting-up time in the boiled water tank 16, control system was opened magnetic valve VIII40, and the boiling water in the boiled water tank 16 is through magnetic valve VIII40 and pipeline VIII41 inlet chamber reservoir 20.After water level reached capping and postpones setting-up time in the room temperature water tank 20, control system was opened electromagnetic valve II I18 and magnetic valve VII38.Remaining boiling water are through piping III22, electromagnetic valve II I18, cylinder manifold 25 in the boiled water tank 16, and flow out through the tap 24 of fetching water; Simultaneously, the boiling water in the room temperature water tank 20 enters low temperature water tank 35 through piping VII39 and magnetic valve VII38.After water levels reached capping and postpone setting-up time in the low temperature water tank 35, control system was opened electromagnetic valve I V27 and magnetic valve V29, and remaining boiling water and flow out through the tap 24 of fetching water through piping IV26, electromagnetic valve I V27, cylinder manifold 25 in the room temperature water tank 20; Simultaneously, the boiling water in the low temperature water tank 35 is through piping V28, magnetic valve V29, cylinder manifold 25, and flows out through the tap 24 of fetching water.When water level reached the lower limit of setting in the low temperature water tank 35, control system was closed magnetic valve V29, and opens magnetic valve VI33, and remaining boiling water is discharged through pipeline VI32 and magnetic valve VI33 in the low temperature water tank 35.So far, finish cleaning and the high-temperature sterilization of inner all water tanks of water dispenser, pipeline and magnetic valve, manual-lock water intaking tap 24, control system is closed all magnetic valves of opening.The above-mentioned purpose that time-delay is set is in order to allow boiling water be full of whole water tank, realizes each water tank inside is comprehensively cleaned and sterilized.The water that overflows from each passage comes together in the bottom of casing 10 and passes through relief port 31 outflows.Repeat above flow process and can carry out repeatedly cleaning and high-temperature sterilization to water dispenser.
Earlier by mode selecting key 43 select spring winter pattern when using water dispenser first winter in spring, and control system is opened electromagnetic valve I 1, and running water enters heating water tank 5 through filter 2, heater 6 energising heating simultaneously.When water level reached the height of setting, water level temperature integrated sensor I 7 sent water level signal, and electromagnetic valve I 1 is closed.Stop heating after water is boiled and open electromagnetic valve II 9 and magnetic valve VIII40.Boiled water is by pipeline II 11, electromagnetic valve II 9, boiled water tank 16, pipeline VIII41 and magnetic valve VIII40 inlet chamber reservoir 20.When water level reached capping in the room temperature water tank 20, magnetic valve VIII40 closed, and boiling water continues to enter boiled water tank 16 through electromagnetic valve II 9 and pipeline II11.When water level reached capping in the boiled water tank 16, magnetic valve electromagnetic valve II 9 was closed.Whole system enters wait state.Under winter in the spring pattern, the setting of the water level upper limit makes once boiled water all enter boiled water tank 16 and room temperature water tank 20 in the heating water tank 5, and keeps the interior water level of each water tank all to be in the upper limit.The heat-insulation layer 17 of boiled water tank 16 outsides can make inner water keep higher temperature for a long time.Water in the room temperature water tank 20 is then by naturally cooling to room temperature.At this moment, water dispenser can provide boiling water, high-temperature water and room temperature water.Earlier by mode selecting key 43 select summer autumn pattern when using water dispenser first summer and autumn, and electromagnetic valve I 1 is opened, and running water enters heating water tank 5 through filter 2, heater 6 energising heating simultaneously.Prescribe a time limit when water level reaches going up of setting, electromagnetic valve I 1 is closed.Stop heating after water is boiled and open electromagnetic valve II 9 and magnetic valve VIII40.Boiled water enters low temperature water tank 35 through piping II 11, electromagnetic valve II 9, boiled water tank 16, pipeline VIII41, magnetic valve VIII40, pipeline VII39, magnetic valve VII38.When water level reached capping in the low temperature water tank 35, control system was closed magnetic valve VII38 and refrigerating plant 34 energisings is freezed.Boiling water continues inlet chamber reservoir 20.When the water level in the room temperature water tank 20 reached capping, magnetic valve VIII40 closed; Boiling water then continues to enter boiled water tank 16.When the water level in the boiled water tank 16 reached capping, electromagnetic valve II 9 was closed.Water temperature under the cooling effect of refrigerating plant 34 in the low temperature water tank 35 reduce gradually, during to the lowest temperature set, and refrigerating plant 34 outages.Whole system enters wait state.Under autumn in the summer pattern, the setting of the water level upper limit makes once boiled water all enter boiled water tank 16, room temperature water tank 20 and low temperature water tank 35 in the heating water tank 5, and keeps the interior water level of each water tank all to be in the upper limit.30 of the heat-insulation layers of low temperature water tank 35 outsides play adiabatic effect.At this moment, water dispenser can provide boiling water, high-temperature water, room temperature water and water at low temperature.
When needing boiling water, press boiling water key 45, electromagnetic valve II I18 opens.Boiling water in the boiled water tank 16 enters cylinder manifold 25 through electromagnetic valve II I18 and pipeline III22, and manual unlocking water intaking tap 24 can be fetched water.When needing room temperature water, press room temperature water key 47, electromagnetic valve I V27 opens.Room temperature water in the room temperature water tank 20 enters cylinder manifold 25 through electromagnetic valve I V27 and pipeline IV26, and manual unlocking water intaking tap 24 can be fetched water.When needing high-temperature water, press high-temperature water key 46, control system is opened electromagnetic valve II I18 and electromagnetic valve I V27 simultaneously, and according to different times of opening by two magnetic valves of algorithms control of setting of water temperatures in boiled water tank 16 and the room temperature water tank 20, boiling water in the boiled water tank 16 is through electromagnetic valve II I18 and pipeline III22, room temperature water in the room temperature water tank 20 all enters cylinder manifold 25 through electromagnetic valve I V27 and pipeline IV26, and manual unlocking water intaking tap 24 can be fetched water.In the time of need drinking the water at low temperature through refrigeration summer and autumn, press water at low temperature key 44, magnetic valve V29 opens, and the water in the low temperature water tank 35 is through piping V28, magnetic valve V29 and cylinder manifold 25, and manual unlocking water intaking leading 24 can be fetched water.Under winter in the spring pattern, anhydrous in the low temperature water tank 35, water at low temperature key 44 is inoperative.More than under four kinds of water intaking states, water intaking is finished and is closed leading 24 o'clock of water intaking, the output signal of position sensor 23 changes, control system is closed all magnetic valves of opening.At this moment, system reenters wait state.
For guaranteeing to provide temperature required drinking water at any time, control system can be according to the sequencing of low temperature water tank 35, room temperature water tank 20, boiled water tank 16, detect water level and water temperature (under winter in the spring pattern, not detecting low temperature water tank) in each water tank with the time interval of setting.If the water level in the low temperature water tank 35 is lower than the lower limit of setting, control system is opened magnetic valve VII38 the water in the room temperature water tank 20 is injected low temperature water tank 35, reaches setting value up to its water level.Equally, if the water level in the room temperature water tank 20 is lower than the lower limit of setting, then open magnetic valve VIII40 with the water flood chamber reservoir 20 in the boiled water tank 16, reach setting value up to its water level.When the water level in the boiled water tank 16 is lower than the lower limit of setting, then open electromagnetic valve I 1, heater 6 energising heating simultaneously.After water was boiled, electromagnetic valve II 9 was opened, and boiling water enters boiled water tank 16.If do not fetch water for a long time, when the water temperature in the boiled water tank 16 was lower than the lowest temperature of setting, electromagnetic valve I 1 was opened, heater 6 energising heating.The boiled rear electromagnetic valve II 9 of water opens, and boiling water injects boiled water tank 16.Temperature is lower if the water level in the boiled water tank 16 is higher, then open magnetic valve VIII40 make in the boiled water tank 16 water elder generation flood chamber reservoir 20 some.If the water in the room temperature water tank 20 surpass capping, then open magnetic valve VII38, make water in the room temperature water tank 20 inject low temperature water tank 35 some.If the water in the low temperature water tank 35 also surpasses capping, then open magnetic valve VI33, discharge some water by pipeline VI32.The above-mentioned water yield of discharging from higher level's water tank toward subordinate's water tank can be according to water level and the water temperature signal and definite based on set algorithm of water level temperature integrated sensor output in subordinate's water tank.If the water temperature in the low temperature water tank 35 is higher than design temperature, then refrigerating plant 34 startups are freezed, till water temperature is reduced to design temperature.

Claims (1)

1. a multipurpose healthy drinking machine is characterized in that: comprise casing (10), filter (2), heating water tank (5), boiled water tank (16), room temperature water tank (20), low temperature water tank (35), refrigerating plant (34), cylinder manifold (25), magnetic valve, water level temperature integrated sensor, position sensor (23), pipeline and control system; Control system comprises circuit board (14), LCDs (15), boiling water key (45), high-temperature water key (46), room temperature water key (47), water at low temperature key (44), mode selecting key (43), cleaning and sterilizing key (42); Municipal tap water pipe (1) links to each other with heating water tank (5) with electromagnetic valve I (4) by filter (2), pipeline I (3); Water level temperature integrated sensor I (7) is fixed on the top of heating water tank (5) and inserts its inside; Passage I (8) is arranged at heating water tank (5) top, and heater (6) is arranged at inboard bottom, and the bottom links to each other with the top of electromagnetic valve II (9) with boiled water tank (16) by pipeline II (11); Water level temperature integrated sensor II (12) is fixed on boiled water tank (16) top and inserts its inside; There is heat-insulation layer I (17) outside of boiled water tank (16), passage II (13) is arranged at the top, the bottom links to each other with cylinder manifold (25) with electromagnetic valve II I (18) by pipeline III (22), and the bottom also links to each other with room temperature water tank (20) top with electromagnetic valve I V (40) by pipeline IV (41); Water level temperature integrated sensor III (21) is fixed on the top of room temperature water tank (20) and inserts its inside; Passage III (19) is arranged at room temperature water tank (20) top, and the bottom links to each other with cylinder manifold (25) with magnetic valve V (27) by pipeline V (26), also links to each other with low temperature water tank (35) with magnetic valve VI (38) by pipeline VI (39); Water level temperature integrated sensor IV (37) is fixed on low temperature water tank (35) top and inserts its inside; Passage IV (36) is arranged at low temperature water tank (35) top, and the bottom links to each other with cylinder manifold (25) with magnetic valve VII (29) by pipeline VII (28), also has pipeline VIII (32) to communicate with atmosphere by magnetic valve VIII (33); Refrigerating plant (34) adopts the paster mode to be fixed on the outside of low temperature water tank (35); There is heat-insulation layer II (30) in the outside of low temperature water tank (35); Water intaking tap (24) is positioned at the positive of casing (10) and links to each other with cylinder manifold (25); Circuit board (14) is fixed on the positive inboard of casing (10); Position sensor (23) connects firmly with casing (10), and is electrically connected near water intaking tap (24) and with circuit board (14); LCDs (15) and all buttons all connect firmly with casing (10), are positioned at water intaking tap (24) top, and are electrically connected with circuit board (14); All water level temperature integrated sensors all are electrically connected with circuit board (14); Relief port (31) is arranged at the bottom of casing (10).
CN 201220698314 2012-12-12 2012-12-12 Multipurpose healthy water dispenser Expired - Fee Related CN203106795U (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102973152A (en) * 2012-12-12 2013-03-20 中国计量学院 Health water dispenser capable of supplying drinking water in different temperatures
CN104720590A (en) * 2015-02-16 2015-06-24 陈时军 Water dispenser and control method thereof
CN106943015A (en) * 2017-03-29 2017-07-14 广西喜爱家饮水设备有限公司 Automate drinking-water system
CN107055920A (en) * 2017-03-29 2017-08-18 广西喜爱家饮水设备有限公司 Intelligent drinking-water system
CN107117754A (en) * 2017-03-29 2017-09-01 广西喜爱家饮水设备有限公司 Intelligent purifying drinking-water system
CN107117761A (en) * 2017-03-29 2017-09-01 广西喜爱家饮水设备有限公司 Automate purifying drinking water system

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102973152A (en) * 2012-12-12 2013-03-20 中国计量学院 Health water dispenser capable of supplying drinking water in different temperatures
CN104720590A (en) * 2015-02-16 2015-06-24 陈时军 Water dispenser and control method thereof
CN104720590B (en) * 2015-02-16 2017-06-23 陈时军 Water dispenser and its control method
CN106943015A (en) * 2017-03-29 2017-07-14 广西喜爱家饮水设备有限公司 Automate drinking-water system
CN107055920A (en) * 2017-03-29 2017-08-18 广西喜爱家饮水设备有限公司 Intelligent drinking-water system
CN107117754A (en) * 2017-03-29 2017-09-01 广西喜爱家饮水设备有限公司 Intelligent purifying drinking-water system
CN107117761A (en) * 2017-03-29 2017-09-01 广西喜爱家饮水设备有限公司 Automate purifying drinking water system

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130807

Termination date: 20141212

EXPY Termination of patent right or utility model